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Sensing Enzymatic Activity by Exposure and Selection of DNA-Encoded Probes

机译:通过接触和选择DNA编码探针感测酶活性

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摘要

A sensing approach is applied to encode quantitative enzymatic activity information into DNA sequence populations. The method utilizes DNA-linked peptide substrates as activity probes. Signal detection involves chemical manipulation of a probe population downstream of sample exposure and application of purifying, selective pressure for enzyme products. Selection-induced changes in DNA abundance indicate sample activity. The detection of protein kinase, protease, and farnesyltransferase activities is demonstrated. The assays were employed to measure enzyme inhibition by small molecules and activity in cell lysates using parallel DNA sequencing or quantitative PCR. This strategy will allow the extensive infrastructure for genetic analysis to be applied to proteomic assays, which has a number of advantages in throughput, sensitivity, and sample multiplexing.
机译:将一种感测方法应用于将定量酶活性信息编码为DNA序列群体。 该方法利用DNA连接的肽基材作为活性探针。 信号检测涉及在样品暴露下游的探针群体的化学操纵和纯化,选择性压力的酶产品的应用。 DNA丰度的选择诱导的变化表明样品活性。 证明了蛋白激酶,蛋白酶和法呢基转移酶活性的检测。 使用通过平行DNA测序或定量PCR测量细胞裂解物中的小分子和活性的测定法测定测定。 该策略将允许遗传分析的广泛基础设施应用于蛋白质组学测定,其具有吞吐量,灵敏度和样品复用的许多优点。

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